111 Log() << kFATAL <<
"<PDEFoamDiscriminantDensity::Density()> Binary tree not set!" <<
Endl;
114 std::vector<Double_t> lb(GetBox().
size());
115 std::vector<Double_t> ub(GetBox().
size());
118 const Double_t probevolume_inv = 1.0 / GetBoxVolume();
121 for (
UInt_t idim = 0; idim < GetBox().size(); ++idim) {
122 lb[idim] = xev[idim] - GetBox().at(idim) / 2.0;
123 ub[idim] = xev[idim] + GetBox().at(idim) / 2.0;
127 std::vector<const TMVA::BinarySearchTreeNode*> nodes;
130 const Double_t sumOfWeights = fBst->SearchVolume(&volume, &nodes);
133 event_density = nodes.size() * probevolume_inv;
137 for (std::vector<const TMVA::BinarySearchTreeNode*>::const_iterator it = nodes.begin();
138 it != nodes.end(); ++it) {
139 if ((*it)->GetClass() ==
fClass)
140 n_sig += (*it)->GetWeight();
144 return (n_sig / (sumOfWeights + 0.1)) * probevolume_inv;
size_t size(const MatrixT &matrix)
retrieve the size of a square matrix
This is an abstract class, which provides an interface for a PDEFoam density estimator.
This is a concrete implementation of PDEFoam.
virtual Double_t Density(std::vector< Double_t > &Xarg, Double_t &event_density)
This function is needed during the foam buildup.
PDEFoamDiscriminantDensity()
Volume for BinarySearchTree.
void box(Int_t pat, Double_t x1, Double_t y1, Double_t x2, Double_t y2)
MsgLogger & Endl(MsgLogger &ml)